Differentiable optical lens simulator for end-to-end computational imaging.
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Updated
Aug 22, 2026 - Python
Differentiable optical lens simulator for end-to-end computational imaging.
A fast transfer matrix method written in jax for modelling optical multilayer thin films
Optics simulation in Julia using geometrical and Gaussian beamlet tracing – simulate lasers, beam propagation, and simple optical systems.
Blender add-on to design, simulate, align & render optical setups — live beam tracing, kinematic-mount auto-alignment, polarization (Jones/Stokes), interference fringes, Gaussian beams, wavelength optics, and a real-vendor component library. Driveable from the UI or a headless optics_api (AI/MCP-friendly).
An open-source design and optimization environment for optical thin-film coatings
Scintillator Simulation Library for Geant4
This is the official Mitsuba0.6 implementation of "A Monte Carlo Rendering Framework for Simulating Optical Heterodyne Detection" (SIGGRAPH 2025)
Easy to use optical exploration, simulation and design
[Photonics Research, 2026] Accurate wave propagation modeling with reduced precision
Lumerical varFDTD simulation of an MMI waveguide for silicon photonics
Workshop given in graduate-level thin film coatings course in ITU
Differentiable and Modular Optical Microscopy Simulations and Inversions
Convert optical simulation requests into validated, solver-ready spec JSON.
gpu accelerated fringe projection simulation
Local Web GUI for reproducible chick/human-eye illumination experiments with guided OpticStudio verification; optional MCP automation.
A fork of abeles library from OpenFilters project.
Open-source digital twin for fluorescence imaging systems, including image-dataset analysis, optical filters, illumination, sensors, electronics, calibration, and hardware optimization.
Open-source optical design, sequential ray-tracing and engineering analysis software built with C++20 and Qt 6.
A computational rendering engine designed to reveal high-contrast user interfaces through solid materials like wood, fabric, and plastic using optical compensation algorithms and PMOLED technology.
A generic graph-based AI model for optical design
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